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Searched for f. Results 11 to 20 of 58 total matches.
Terlipressin (Terlivaz) for Hepatorenal Syndrome
The Medical Letter on Drugs and Therapeutics • Mar 20, 2023 (Issue 1672)
controlled trial.
Front Pharmacol 2021; 12:675948.
7. C Bera and F Wong. Management of hepatorenal syndrome ...
The FDA has approved the intravenously administered
synthetic vasopressin analog terlipressin (Terlivaz –
Mallinckrodt) to improve kidney function in adults
with hepatorenal syndrome (HRS) and a rapid decline
in kidney function. Terlipressin is the first drug to be
approved for this indication in the US; it has been
available in Europe and elsewhere for year
Med Lett Drugs Ther. 2023 Mar 20;65(1672):46-8 doi:10.58347/tml.2023.1672c | Show Introduction Hide Introduction
In Brief: Expanded Indication for Elevidys
The Medical Letter on Drugs and Therapeutics • Aug 19, 2024 (Issue 1709)
. Med Lett Drugs Ther 2023; 65:159.
2. F Muntoni et al. ENVISION, a phase 3, randomized trial ...
The adeno-associated virus (AAV) vector-based
gene therapy delandistrogene moxeparvovec-rokl
(Elevidys – Sarepta) received accelerated approval
from the FDA in 2023 for treatment of ambulatory
children 4-5 years old with Duchenne muscular
dystrophy (DMD) who have a confirmed mutation
in the DMD gene. It has now received full approval
for use in ambulatory patients ≥4 years old and
accelerated approval for use in nonambulatory
patients with DMD.
Med Lett Drugs Ther. 2024 Aug 19;66(1709):135-6 doi:10.58347/tml.2024.1709e | Show Introduction Hide Introduction
In Brief: Casgevy for Beta Thalassemia
The Medical Letter on Drugs and Therapeutics • May 13, 2024 (Issue 1702)
-thalassemia. N Engl J Med 2021; 384:252.
4. F Locatelli et al. Exagamglogene autotemcel ...
Exagamglogene autotemcel (Casgevy – Vertex), a cell-based
gene therapy recently approved for treatment
of sickle cell disease1, has now been approved by
the FDA for treatment of patients ≥12 years old with
transfusion-dependent beta thalassemia. Casgevy is
the first gene therapy that uses CRISPR/Cas9 gene-editing
technology to be approved in the US for any
disorder. Betibeglogene autotemcel (Zynteglo), an
autologous lentiviral vector cell-based gene therapy,
was approved in the US in 2022 for treatment of
transfusion-dependent beta thalassemia.
Med Lett Drugs Ther. 2024 May 13;66(1702):79 doi:10.58347/tml.2024.1702d | Show Introduction Hide Introduction
Sotorasib (Lumakras) for NSCLC (online only)
The Medical Letter on Drugs and Therapeutics • Jun 12, 2023 (Issue 1678)
progression-free
survival. Hepatotoxicity and interstitial lung
disease/pneumonitis can occur. 1. F ...
Sotorasib (Lumakras — Amgen), an oral KRAS
inhibitor, has received accelerated approval by the
FDA for treatment of KRAS G12C-mutated locally
advanced or metastatic non-small cell lung cancer
(NSCLC) in adults who received at least one prior
systemic therapy. Accelerated approval was based
on the overall response rate and duration of response.
KRAS mutations are found in 25-30% of non-squamous-cell NSCLC cases and the G12C mutation
is the most common KRAS mutation. Sotorasib is the
first KRAS inhibitor to be approved in the US.
Med Lett Drugs Ther. 2023 Jun 12;65(1678):e104-5 doi:10.58347/tml.2023.1678e | Show Introduction Hide Introduction
Axatilimab (Niktimvo) for Chronic Graft-Versus-Host Disease (online only)
The Medical Letter on Drugs and Therapeutics • Nov 11, 2024 (Issue 1715)
1. F Malard and M Mohty. Updates in chronic graft-versus-host
disease management. Am J Hematol 2023 ...
Axatilimab-csfr (Niktimvo – Incyte), a colony
stimulating factor-1 receptor-blocking antibody, has
been approved by the FDA for intravenous treatment
of chronic graft-versus-host disease (cGVHD) after
failure of at least 2 lines of systemic therapy in patients
weighing ≥40 kg. Corticosteroids are generally the
first-line treatment for cGVHD. The oral kinase
inhibitors ibrutinib (Imbruvica), ruxolitinib (Jakafi),
and belumosudil (Rezurock) are also approved for
treatment of cGVHD. Extracorporeal photopheresis
has been used off-label.
Med Lett Drugs Ther. 2024 Nov 11;66(1715):e184-5 doi:10.58347/tml.2024.1715e | Show Introduction Hide Introduction
Casimersen (Amondys 45) for Duchenne Muscular Dystrophy (online only)
The Medical Letter on Drugs and Therapeutics • Jun 28, 2021 (Issue 1627)
.
6. F Fortunato et al. Innovative therapeutic approaches for
Duchenne muscular dystrophy. J Clin Med ...
Casimersen (Amondys 45 – Sarepta), an IV antisense
oligonucleotide, has received accelerated approval
from the FDA for treatment of Duchenne muscular
dystrophy (DMD) in patients who have mutations
of the dystrophin gene that are amenable to exon
45 skipping (DMD-45), which occur in ~8% of DMD
cases. Casimersen is the first drug to be approved
for this indication and the fifth to be approved for
treatment of DMD; the IV antisense oligonucleotides
eteplirsen (Exondys 51), golodirsen (Vyondys 53),
and viltolarsen (Viltepso) and the oral corticosteroid
deflazacort (Emflaza) were...
Asciminib (Scemblix) for Chronic Myeloid Leukemia (online only)
The Medical Letter on Drugs and Therapeutics • Jun 12, 2023 (Issue 1678)
.1, J Cortes and F Lang. Third-line therapy for chronic myeloid
leukemia: current status and future ...
Asciminib (Scemblix – Novartis), an oral kinase
inhibitor, has been approved by the FDA for treatment
of adults with Philadelphia chromosome-positive
chronic myeloid leukemia (Ph+ CML) in chronic
phase (CP) previously treated with ≥2 tyrosine kinase
inhibitors and for adults with Ph+ CML in CP with a
T315I mutation.
Med Lett Drugs Ther. 2023 Jun 12;65(1678):e107-8 doi:10.58347/tml.2023.1678g | Show Introduction Hide Introduction
In Brief: Azmiro — A Single-Dose Injectable Formulation of Testosterone Cypionate
The Medical Letter on Drugs and Therapeutics • Mar 17, 2025 (Issue 1724)
-than-recommended
temperatures (less than 20-25°C;
68-77°F). According to its manufacturer, Azmiro ...
The FDA has approved Azmiro (Azurity), the first
injectable formulation of testosterone cypionate to
become available in single-dose vials and prefilled
syringes for treatment of males with conditions
associated with a deficiency or absence of endogenous
testosterone. Injectable testosterone cypionate has
been available in multidose vials (Depo-Testosterone,
and generics) for many years. Testosterone enanthate
(Xyosted) is available in prefilled autoinjectors for use
in adult men. No testosterone products are approved
for treatment of low testosterone levels due solely
to aging. All...
Med Lett Drugs Ther. 2025 Mar 17;67(1724):44-5 doi:10.58347/tml.2025.1724b | Show Introduction Hide Introduction
Delandistrogene Moxeparvovec (Elevidys) for Duchenne Muscular Dystrophy
The Medical Letter on Drugs and Therapeutics • Oct 02, 2023 (Issue 1686)
million.9
1. F Fortunato et al. Innovative therapeutic approaches for
Duchenne muscular dystrophy. J ...
Delandistrogene moxeparvovec-rokl (Elevidys –
Sarepta), an adeno-associated virus (AAV) vector-based
gene therapy, has received accelerated
approval from the FDA for treatment of ambulatory
children 4-5 years old with Duchenne muscular
dystrophy (DMD) who have a confirmed mutation in
the dystrophin gene. It is the first gene therapy to be
approved in the US for treatment of DMD. Accelerated
approval was based on expression of microdystrophin
in skeletal muscle, a surrogate endpoint.
Med Lett Drugs Ther. 2023 Oct 2;65(1686):159-60 doi:10.58347/tml.2023.1686d | Show Introduction Hide Introduction
Betibeglogene Autotemcel (Zynteglo) for Beta Thalassemia (online only)
The Medical Letter on Drugs and Therapeutics • Sep 30, 2024 (Issue 1712)
. Mol Genet Genomic Med 2021; 9:e1788.
3. F Locatelli et al. Betibeglogene autotemcel gene therapy ...
Betibeglogene autotemcel (Zynteglo — Bluebird
Bio), an autologous lentiviral vector cell-based gene
therapy, has been approved by the FDA for one-time
treatment of transfusion-dependent beta thalassemia
in children and adults. Exagamglogene autotemcel
(Casgevy), a cell-based gene therapy that uses
CRISPR/Cas9 gene-editing technology, was approved
earlier this year for the same indication in patients
≥12 years old.
Med Lett Drugs Ther. 2024 Sep 30;66(1712):e167-8 doi:10.58347/tml.2024.1712c | Show Introduction Hide Introduction